1.
Geometric classifications of 3D pores are useful for studying relationships between pore geometry and function in granular materials. Pores are typically characterized by[...]
2025 | Medical engineering|Materials engineering |
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This dataset contains raw computational input and output files for first-principles density-functional theory (DFT) calculations on pristine and vanadium-doped layered me[...]
2026 | Materials engineering | Code|Raw data|Graphics |
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Arterial diseases alter blood vessel function through complex mechanisms, requiring microphysiological systems that mimic human arteries. We established an artery-on-chip[...]
2026 | Materials engineering|Biological sciences | Tabular|Image |
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4.
Chiral perovskite nanocrystals have emerged as an interesting chiral excitonic platform that combines both structural flexibility and superior optoelectronic properties. [...]
2023 | Materials engineering|Nano technology |
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Notwithstanding the evidence against them classical variational phase-field models continue to be used and pursued in an attempt to describe fracture nucleation in elasti[...]
2024 | Materials engineering | Tabular |
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Retinal microvascular diseases involve a compromised inner blood-retina barrier (iBRB), which remains poorly understood. A renewable source of human iBRB endothelium is t[...]
2026 | Other engineering and technologies|Mechanical engineering|Biological sciences|Medical engineering|Materials engineering | Genomic Data |
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Hybrid perovskite dimensional engineering enables the creation of one- to three-dimensional (1D to 3D) networks of corner-sharing metal halide octahedra interspersed by o[...]
2025 | Physical sciences|Materials engineering |
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8.
The similarity in mechanical properties of dense active matter and sheared amorphous solids has been noted in recent years without a rigorous examination of the underlyin[...]
2021 | Materials engineering|Physical sciences | Code|Raw data |
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9.
Iridium oxide (IrO2) is the state-of-the-art electrocatalyst for water oxidation in electrolyzers yet it suffers from instability under operating conditions. Here we comb[...]
2026 | Materials engineering|Physical sciences | Graphics|Image |
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10.
The mechanical properties of covalent polymer networks often arise from the permanent end-linking or cross-linking of polymer strands and molecular linkers that break mor[...]
2023 | Materials engineering|Chemical sciences | Text|Binary|Tabular |
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